Radix 2.8Dk Printable Dielectric is a photopolymer material for additive manufacture of three-dimensional RF dielectric parts. It is not a conventional copper-clad circuit-board core. Its solid-material dielectric observations can support lens or loading-element studies, while lattice geometry creates a different effective electromagnetic structure.

Material system

Photopolymer resin for dielectric additive manufacturing

Technical properties

Radix 2.8Dk Printable Dielectric — reported properties and conditions
PropertyReported valueConditions / source
Process dielectric constant2.8Typical; 10 GHz, 23°C/50% RH; IPC-TM-650 2.5.5.5 clamped stripline; direction is not separately recorded here. Source
Dissipation factor0.0043Typical; 10 GHz, 23°C/50% RH; IPC-TM-650 2.5.5.5; direction is not separately recorded here. Source
Thermal conductivity0.3 W/(m·K)Typical; ASTM D5470, 50°C, through-thickness direction. Source
Process dielectric constant2.8Typical solid printed specimen, 24 GHz, 23°C/50% RH, Z direction; IPC-TM-650 2.5.5.5. Print/post-cure recipe is not specified in this datasheet table. Source
Dissipation factor0.0046Typical solid printed specimen, 24 GHz, 23°C/50% RH, Z direction; IPC-TM-650 2.5.5.5. Source
Water absorption0.08 %Typical; D24/23, ASTM D570; printed solid specimen. Source

Typical reported values are not a purchase specification. Process Dk, design Dk and values measured at different frequencies are not interchangeable.

Selection and design notes

  • Consider it for gradient-index lenses, antenna loading or prototypes whose three-dimensional form is difficult to make from sheet material. Model the actual solid fraction and cell geometry rather than assigning the bulk 2.8 value to every printed lattice.
  • A printed structure needs checks of dimensions, surface quality and RF response after the intended post-processing. The useful manufacturing freedom does not remove tolerance or environmental requirements.

Thickness and copper options

Thickness is a printed geometry, not a stocked laminate core. Minimum features and post-process dimensions require process qualification.

No standard copper cladding is specified. Any metallization or attachment process is a separate engineering development.

Fabrication considerations

  • Use the printer and material process approved for the chosen resin. Record print orientation, exposure, cleaning and post-cure conditions, then test representative specimens; the publicly retrieved datasheet does not provide a complete validated print/post-cure recipe.

Application fit

  • Gradient-index lenses
  • Three-dimensional antennas
  • Dielectric matching structures

Limits and substitution checks

  • No ordinary laminate preset is provided. The published table describes solid printed specimens in a stated direction at 10 and 24 GHz, not arbitrary lattice effective Dk. The reported heat-deflection behavior also does not authorize standard PCB reflow or a copper-clad fabrication process.

Technical sources